AM ResearchMetal Additive Manufacturing

University of Waterloo researchers awarded $10.9M for AM network

The Holistic Innovation in Additive Manufacturing (HI-AM 2.0) project will focus on training highly qualified professionals (HQPs) and developing technologies that reduce the environmental footprint of advanced manufacturing

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According to the University of Waterloo, a group of researchers is set to advance sustainable innovation and train the next generation of leaders in the additive manufacturing industry, supported by by two grants totaling $10.9 million from the Natural Sciences and Engineering Research Council of Canada (NSERC) and Mitacs, as well as funding from industry partners from sectors such as aerospace, automotive, and energy.

The Holistic Innovation in Additive Manufacturing (HI-AM 2.0) project will focus on training highly qualified professionals (HQPs) and developing technologies that reduce the environmental footprint of advanced manufacturing. The work builds on the previous HI-AM Network that worked to address the challenges that prevented the industrial adoption of metal AM and equip Canada for the ongoing disruptions in manufacturing as a result of digital technologies and geopolitical contexts.

“The announcement of HI-AM 2.0 is a testament to the success of the original project and will continue to accelerate the industrial adoption of metal additive manufacturing in Canada,” said Charmaine Dean, Vice-President of Research and International at the University of Waterloo. “Importantly, the project will also train the next generation of HQPs who will ensure that the sector continues to grow and thrive, thus strengthening our economy. HI-AM 2.0 is just the latest example of how Waterloo successfully partners with industry and with other academic institutions to maximize resources and impact.”

The original HI-AM Network ran from 2017 to 2024 and brought together 19 leading AM experts from several Canadian universities. The network set out to train 78 HQPs at different stages in their academic careers, ultimately exceeding that goal by training more than 140 individuals, who lent their expertise in various industry sectors to drive growth across the country. Among them are two PhD students who founded Retinex, a start-up that advances quality assurance for laser AM and welding applications.

Today, many industries benefit from the HI-AM group’s innovations, including automotive, aerospace, energy, engineering, AM material suppliers, and original equipment manufacturers.

“As the original network was nearing its conclusion, we received widespread support and encouragement from stakeholders to continue the initiative in some form, which underscored the success of the original program and highlighted the ongoing demand for large-scale collaborative research on disruptive technologies in Canada,” said Dr. Ehsan Toyserkani, engineering professor, Canada Research Chair in AM, and Director of HI-AM 2.0.

The research covers a broad range of topics, including process optimization for advanced alloys, multi-scale modelling, digital twin modelling, machine learning applications in quality assurance for AM, and efforts to scale production through multi-laser and large-envelope processes.

“The role played by our private sector, not-for-profit and government partners in the success of this large-scale initiative cannot be overstated,” said Dr. Mihaela Vlasea, associate director of HI-AM 2.0 and associate professor in the Department of Mechanical and Mechatronics Engineering. “Collectively, our partners bring access to high-caliber Canadian talent, as well as diverse levels of experience with additive manufacturing. Through low-risk, high-impact research projects, we can guide businesses in adopting more sustainable technologies from a design, material, performance, and cost perspective.”

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